KCNQ channel openers reverse depressive symptoms via an active resilience mechanism

Potassium channels in the ventral tegmental area are known to regulate resilience against stress-induced depression. Here, the authors show over expression of KCNQ3 channels in VTA dopaminergic neurons or treatment with KCNQ channel openers normalizes depressive behaviours in mouse models.

Guardado en:
Detalles Bibliográficos
Autores principales: Allyson K. Friedman, Barbara Juarez, Stacy M. Ku, Hongxing Zhang, Rhodora C. Calizo, Jessica J. Walsh, Dipesh Chaudhury, Song Zhang, Angel Hawkins, David M. Dietz, James W. Murrough, Maria Ribadeneira, Erik H. Wong, Rachael L. Neve, Ming-Hu Han
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
Materias:
Q
Acceso en línea:https://doaj.org/article/27a25b5d540741f383c902474985df50
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:27a25b5d540741f383c902474985df50
record_format dspace
spelling oai:doaj.org-article:27a25b5d540741f383c902474985df502021-12-02T16:49:43ZKCNQ channel openers reverse depressive symptoms via an active resilience mechanism10.1038/ncomms116712041-1723https://doaj.org/article/27a25b5d540741f383c902474985df502016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11671https://doaj.org/toc/2041-1723Potassium channels in the ventral tegmental area are known to regulate resilience against stress-induced depression. Here, the authors show over expression of KCNQ3 channels in VTA dopaminergic neurons or treatment with KCNQ channel openers normalizes depressive behaviours in mouse models.Allyson K. FriedmanBarbara JuarezStacy M. KuHongxing ZhangRhodora C. CalizoJessica J. WalshDipesh ChaudhurySong ZhangAngel HawkinsDavid M. DietzJames W. MurroughMaria RibadeneiraErik H. WongRachael L. NeveMing-Hu HanNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-7 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Allyson K. Friedman
Barbara Juarez
Stacy M. Ku
Hongxing Zhang
Rhodora C. Calizo
Jessica J. Walsh
Dipesh Chaudhury
Song Zhang
Angel Hawkins
David M. Dietz
James W. Murrough
Maria Ribadeneira
Erik H. Wong
Rachael L. Neve
Ming-Hu Han
KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
description Potassium channels in the ventral tegmental area are known to regulate resilience against stress-induced depression. Here, the authors show over expression of KCNQ3 channels in VTA dopaminergic neurons or treatment with KCNQ channel openers normalizes depressive behaviours in mouse models.
format article
author Allyson K. Friedman
Barbara Juarez
Stacy M. Ku
Hongxing Zhang
Rhodora C. Calizo
Jessica J. Walsh
Dipesh Chaudhury
Song Zhang
Angel Hawkins
David M. Dietz
James W. Murrough
Maria Ribadeneira
Erik H. Wong
Rachael L. Neve
Ming-Hu Han
author_facet Allyson K. Friedman
Barbara Juarez
Stacy M. Ku
Hongxing Zhang
Rhodora C. Calizo
Jessica J. Walsh
Dipesh Chaudhury
Song Zhang
Angel Hawkins
David M. Dietz
James W. Murrough
Maria Ribadeneira
Erik H. Wong
Rachael L. Neve
Ming-Hu Han
author_sort Allyson K. Friedman
title KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
title_short KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
title_full KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
title_fullStr KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
title_full_unstemmed KCNQ channel openers reverse depressive symptoms via an active resilience mechanism
title_sort kcnq channel openers reverse depressive symptoms via an active resilience mechanism
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/27a25b5d540741f383c902474985df50
work_keys_str_mv AT allysonkfriedman kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT barbarajuarez kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT stacymku kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT hongxingzhang kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT rhodoraccalizo kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT jessicajwalsh kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT dipeshchaudhury kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT songzhang kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT angelhawkins kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT davidmdietz kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT jameswmurrough kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT mariaribadeneira kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT erikhwong kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT rachaellneve kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
AT minghuhan kcnqchannelopenersreversedepressivesymptomsviaanactiveresiliencemechanism
_version_ 1718383204129308672